Wire arrangement device suitable for server test

By designing a wire processor suitable for server testing, including KVM detection devices and fiber optic wire management devices, the problems of messy wiring and incorrect connections in server testing are solved, and the classification management and layered management of wires are realized, which improves the testing efficiency and aesthetics.

CN223039551UActive Publication Date: 2025-06-27SUMA-USI ELECTRONICS CO LTD
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Patent Information

Application Number
CN202422117091.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-30
Publication Date
2025-06-27
Estimated Expiration
2034-08-30

AI Technical Summary

Technical Problem

In existing server test equipment, the connection between the wiring panel and the server is messy, which can easily cause errors in the connection between the test interface line and the server, affecting the test progress and results.

Method used

A wire manager suitable for server testing is designed, including KVM detection devices, fiber wire management devices and fixtures. Through these devices, the classification management and layered management of power lines and network cables are realized, reducing the possibility of messy lines and incorrect connections.

Benefits of technology

The wire manager ensures the security and cost savings of use by reducing the number of KVM lines; through classified management and layered management, the mixing of lines is avoided, the aesthetics and operability are improved, and working time is reduced.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a wire arrangement device suitable for server testing, and especially relates to the technical field of server KVM test wire arrangement, the wire arrangement device suitable for server testing comprises a testing frame, the top of the testing frame is provided with a cooling fan, the wire arrangement device suitable for server testing and a KVM detection device are made to be movable and are provided with locking devices, the number of KVM wires is reduced, and the cost is reduced. According to the utility model, the use safety is ensured, the cost is saved, the current server is manually tested, the variety of test wires is large, the power line is integrated on the PDU socket, each network cable is integrated on the plug wire panel, the wiring is neat, the classified management and the layered management are realized, various wires are prevented from being mixed together, and the front optical fiber wire in the server testing process is not required to be replaced by the front optical fiber wire in the server testing process. The optical fiber arranging device is designed, front optical fibers are used through stretching of an elastic rope and taken back through the elastic rope, layered management, rapid taking and placing and proper management of wire harnesses are considered, the attractiveness and the operability of operators are greatly improved, and the working time is shortened.
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Description

Technical Field

[0001] The utility model relates to the technical field of server KVM test cable management, in particular to a cable organizer suitable for server testing. Background Technique

[0002] In order to discover in advance the problems caused by assembly or configuration of electronic products, testing is usually carried out after the assembly of electronic products is completed. During the testing, specific test programs are run to simulate the applicable scenarios of various devices, and information such as product hardware and software versions is detected during or after the product testing process. The products with problems found are sent for repair. The above descriptions are all applicable to the production of servers. After the server assembly is completed, first, BIOS, board cards, etc. need to be upgraded and configured, and the status of buttons and indicator lights is detected; secondly, the test system is installed for testing; finally, the test results are checked. Currently, to improve efficiency, each test rack contains multiple test positions, and each test position can accommodate multiple servers for simultaneous testing. There are many wires coming out of the wiring panel. When not in testing, various wires are messy and hanging down, without any aesthetic feeling; during testing, the connections between the wiring panel and the servers are in a mess, which is likely to cause connection errors between the test interface wires and the servers, affecting the test progress and results. Content of the Utility Model

[0003] The purpose of the utility model is to provide a cable organizer suitable for server testing to solve the problems in the above background technique. Currently, to improve efficiency, each test rack contains multiple test positions, and each test position can accommodate multiple servers for simultaneous testing. There are many wires coming out of the wiring panel. When not in testing, various wires are messy and hanging down, without any aesthetic feeling; during testing, the connections between the wiring panel and the servers are in a mess, which is likely to cause connection errors between the test interface wires and the servers, affecting the test progress and results.

[0004] To achieve the above purpose, the utility model provides the following technical solution: A cable organizer suitable for server testing, including a test rack, a heat dissipation fan is arranged on the top of the test rack, a switch is arranged on the top of the test rack, a tower lamp is arranged on the top of the test rack, a KVM detection device is arranged on the inner top of the test rack, a wiring panel is fixedly connected to the inner side of the test rack, an optical fiber cable management device is arranged on the inner side of the test rack, a PDU socket is arranged on the outer side of the test rack, a manual passage is arranged on the inner side of the test rack, a first connecting plate and a second connecting plate are arranged on one side of the manual passage, a plurality of first fixators and second fixators are installed on the outer sides of the first connecting plate and the second connecting plate, the first fixators and the second fixators are used for storing power cords and network cables, the network cables penetrate and connect to the wiring panel, a third waterproof joint is arranged at the bottom of the second fixator, and a plurality of the network cables are bound together through the third waterproof joint.

[0005] Preferably, the first fixator and the second fixator are evenly distributed outside the test rack.

[0006] Preferably, one end of the power cord is connected to the PDU socket.

[0007] Preferably, there are four heat dissipation fans, switches and tower lights respectively.

[0008] Preferably, the KVM detection device includes a guide rail, a guide rope, a hanging ring, a sliding bearing, a connecting plate, a top rod, a limiting sleeve, a top rod seat, a KVM fixing frame, a KVM body and a KVM line. The KVM detection device is fixed above the artificial passage through the connecting plate. The KVM fixing frame and the guide rail are slidably connected through four sliding bearings. One end of the KVM line is connected to the KVM body. One side of the connecting plate is fixedly connected with a guide rope. A hanging ring is sleeved outside the guide rope. The hanging ring is connected to the KVM line. The top rod, the limiting sleeve and the top rod seat are connected.

[0009] Preferably, the inner side of the optical fiber cable management device is provided with an optical fiber cable, a first fixing seat, a second fixing seat, a first clamping plate, an elastic rope, a first waterproof connector, a second waterproof connector, an optical module, a wire groove and a wire groove cover. The optical fiber cable penetrates through the wiring panel, the first fixing seat and the first clamping plate. The optical fiber cable is connected to the elastic rope through the first waterproof connector and the second waterproof connector. The second fixing seat is arranged at one end of the wire groove. A wire groove cover is arranged on one side of the wire groove. One end of the optical fiber cable is connected to the optical module.

[0010] Compared with the prior art, the beneficial effects of the present utility model are as follows: The cable management device applicable to server testing

[0011] 1. The KVM detection device is made movable and is provided with a locking device, which reduces the number of KVM lines, ensures the safety of use and saves costs;

[0012] 2. Aiming at the current manual server testing with various types of test lines, the power cord is integrated into the PDU socket, and each network cable is integrated into the wiring panel. The wiring is neat, and classification management and hierarchical management are achieved, avoiding various lines being mixed together;

[0013] 3. Aiming at the pre - placed optical fiber cable during server testing, an optical fiber cable management device is designed. The pre - placed optical fiber is stretched and used through the elastic rope and retracted by the elastic rope, taking into account hierarchical management and quick access and placement;

[0014] 4. Aiming at the proper management of wire harnesses, it greatly improves the aesthetics and the operability of operators, and reduces the working time. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Figure 1 is a schematic diagram of the external structure of the present utility model;

[0016] Figure 2 This is a schematic structural diagram of the KVM detection device of the present utility model;

[0017] Figure 3 This is a schematic structural diagram of the cooperation between the box body and the baffle of the present utility model;

[0018] Figure 4 This is a schematic structural diagram of the cooperation between the second fixer, the third waterproof joint and the network cable of the present utility model.

[0019] In the figure: 1. Cooling fan; 2. Switch; 3. Tower lamp; 4. Test rack; 5. KVM detection device; 6. Wiring panel; 7. Optical fiber cable management device; 8. PDU socket; 9. Manual passage; 501. Guide rail; 502. Guide rope; 503. Suspension ring; 504. Sliding bearing; 505. Connecting plate; 506. Thrust rod; 507. Limit sleeve; 508. Thrust rod seat; 509. KVM fixing frame; 510. KVM body; 511. KVM cable; 10. First fixer; 12. First connecting plate; 13. Second connecting plate; 601. Second fixer; 602. Third waterproof joint; 603. Network cable; 705. Optical fiber cable; 7011. First fixing seat; 7012. Second fixing seat; 7031. First clamping plate; 7032. Second clamping plate; 704. Elastic rope; 7061. First waterproof joint; 7062. Second waterproof joint; 707. Optical module; 702. Cable trough; 708. Cable trough cover; 801. Power cord. Detailed implementation manners

[0020] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present utility model.

[0021] It should be noted that the structures, ratios, sizes, etc. shown in the drawings of this specification are only used to cooperate with the content disclosed in the specification for those who are familiar with this technology to understand and read, and are not used to limit the limiting conditions that can be implemented in this application. Therefore, they do not have any technical substance. Any modification of the structure, change of the proportional relationship or adjustment of the size, without affecting the effects that can be produced by this application and the purposes that can be achieved, should still fall within the scope that can be covered by the technical content disclosed in this application.

[0022] Embodiment

[0023] Please refer to Figures 1-4, a cable organizer for server testing of the present utility model: includes a test rack 4, a cooling fan 1 is arranged on the top of the test rack 4, a switch 2 is arranged on the top of the test rack 4, a tower light 3 is arranged on the top of the test rack 4, a KVM detection device 5 is arranged on the inner top of the test rack 4, a wiring panel 6 is fixedly connected to the inner side of the test rack 4, an optical fiber cable organizing device 7 is arranged on the inner side of the test rack 4, a PDU socket 8 is arranged on the outer side of the test rack 4, an artificial passage 9 is arranged on the inner side of the test rack 4, a first connecting plate 12 and a second connecting plate 13 are arranged on one side of the artificial passage 9, a plurality of first fixers 10 and second fixers 601 are installed on the outer sides of the first connecting plate 12 and the second connecting plate 13, the first fixers 10 and the second fixers 601 are used for storing the power cord 801 and the network cable 603, the network cable 603 runs through and connects to the wiring panel 6, a third waterproof connector 602 is arranged at the bottom of the second fixer 601, and a plurality of network cables 603 are bound together through the third waterproof connector 602,

[0024] Further, the first fixers 10 and the second fixers 601 are evenly distributed on the outer side of the test rack 4.

[0025] Further, one end of the power cord 801 is connected to the PDU socket 8.

[0026] Further, there are four cooling fans 1, switches 2 and tower lights 3 respectively.

[0027] Further, the KVM detection device 5 includes a guide rail 501, a guide rope 502, a lifting ring 503, a sliding bearing 504, a connecting plate 505, a push rod 506, a limit sleeve 507, a push rod seat 508, a KVM fixing frame 509, a KVM body 510, and a KVM cable 511. The KVM detection device 5 is fixed above the manual passage 9 through the connecting plate 505. The KVM fixing frame 509 and the guide rail 501 are slidably connected through four sliding bearings 504. One end of the KVM cable 511 is connected to the KVM body 510. One side of the connecting plate 505 is fixedly connected with the guide rope 502. A lifting ring 503 is sleeved outside the guide rope 502. The lifting ring 503 is connected to the KVM cable 511. The push rod 506, the limit sleeve 507, and the push rod seat 508 are connected. The KVM detection device 5 is fixed above the manual passage 9 through the connecting plate 505. The KVM fixing frame 509 and the slide rail 501 are used to move the KVM detection device 5 through four sliding bearings 504. Among them, one end of the KVM cable 511 is connected to the KVM body 510, and the other end is inserted into the server. The guide rope 502 uses the lifting ring 503 to traction and restrain the KVM cable 511 to prevent the KVM cable 511 from piling up or knotting. The push rod 506, the limit sleeve 507, and the push rod seat 508 form a braking device for the KVM body 510. When the KVM detection device 5 needs to be moved, the braking device is loosened, and pulling the push rod seat 508 can move the KVM detection device to the working position; when the KVM body 510 is working, the KVM detection device 5 can be locked to prevent other human factors from causing the KVM detection device 5 to move and pull the server, resulting in unnecessary losses.

[0028] Further, inside the optical fiber cable management device 7, there are an optical fiber cable 705, a first fixing seat 7011, a second fixing seat 7012, a first clamping plate 7031, an elastic rope 704, a first waterproof connector 7061, a second waterproof connector 7062, an optical module 707, a cable trough 702, and a cable trough cover 708. The optical fiber cable 705 passes through the wiring panel 6, the first fixing seat 7011, and the first clamping plate 7031. The optical fiber cable 705 is connected to the elastic rope 704 through the first waterproof connector 7061 and the second waterproof connector 7062. The second fixing seat 7012 is arranged at one end of the cable trough 702. A cable trough cover 708 is arranged on one side of the cable trough 702. One end of the optical fiber cable 705 is connected to the optical module 707.

[0029] On one side of the manual passage 9, there are a first connecting plate 12 and a second connecting plate 13, which are equipped with a plurality of first fixators 10 and second fixators 601 for storing the power cord 801 and the network cable 603. One end of the power cord 801 is inserted into the PDU socket 8, and the other end is inserted into the server tail. When there is no test, the end inserted into the server tail is placed on the fixator 10; the network cable 603 comes out from the wiring panel 6, and the waterproof connector 602 is used to bundle the network cables together and store them in the second fixator 601.

[0030] In some server tests, the fiber optic cable needs to be plugged into the front of the server. However, in this application, the fiber optic cable 705 comes out of the wiring panel 6, passes through the first fixing seat 7011 of the fiber optic cable slot and the first clamping plate 7031, and is locked with the elastic cord 704 through the first waterproof joint 7061 and the second waterproof joint 7062. The end of the fiber optic cable 705 is equipped with an optical module 707. The optical module 707 is naturally placed on the cable slot 702 for easy access. Moreover, there is a surplus of the fiber optic cable 705 that is locked with the elastic cord 704. When the server is being tested and the optical module 707 needs to be plugged into the front of the server, the second waterproof joint 7062 is pulled forward and clamped at position A on the second clamping plate 7032 in the front, and the elastic cord is in a stretched state; when the server test is over and the optical module 707 is unplugged, the fiber optic cable is retracted by the elastic cord 704. At this time, the elastic cord 704 returns to its natural straight state, and the second waterproof joint 7062 is located at position B. The elastic cord 704 plays a role in pulling the fiber optic cable 705. The cable slot cover 708 covers the cable slot 702.

[0031] Working principle: The KVM detection device 5 is fixed above the manual passage 9 through the connecting plate 505. The KVM fixing frame 509 and the slide rail 501 are used to move the KVM detection device 5 through 4 sliding bearings 504. Among them, one end of the KVM cable 511 is connected to the KVM body 510, and the other end is inserted into the server. The guiding rope 502 restrains the KVM cable 511 through the hanging ring 503 to prevent the KVM cable 511 from accumulating or knotting. The ejector rod 506, the limit sleeve 507, and the ejector rod seat 508 form the braking device of the KVM body 510. When it is necessary to move the KVM detection device 5, release the braking device, and pull the ejector rod seat 508 to move the KVM detection device to the working position; when the KVM body 510 is working, the KVM detection device 5 can be locked to prevent the KVM detection device 5 from moving due to other human factors and pulling the server, causing unnecessary losses. On one side of the manual passage 9, there are a first connecting plate 12 and a second connecting plate 13, equipped with a plurality of first fixators 10 and second fixators 601 for storing the power cord 801 and the network cable 603. One end of the power cord 801 is inserted into the PDU socket 8, and the other end is inserted into the server tail. When there is no test, the end inserted into the server tail is placed on the fixator 10; the network cable 603 comes out of the wiring panel 6, and the network cables are bundled together using the waterproof joint 602 and stored in the second fixator 601. In some server tests, the optical fiber cable needs to be inserted into the front of the server. In this application, the optical fiber cable 705 comes out of the wiring panel 6, passes through the first fixing seat 7011 of the optical fiber cable slot and the first clamping plate 7031, and is locked with the elastic rope 704 through the first waterproof joint 7061 and the second waterproof joint 7062. The end of the optical fiber cable 705 is equipped with an optical module 707, and the optical module 707 is naturally placed on the cable slot 702 for easy access and placement. And the optical fiber cable 705 locked with the elastic rope 704 has a surplus. When the server is tested and the optical module 707 needs to be inserted into the front of the server, pull the second waterproof joint 7062 forward and clamp it at position A on the front second clamping plate 7032, and the elastic rope is in a stretched state; when the server test is over, unplug the optical module 707, and the optical fiber cable is retracted by the elastic rope 704. At this time, the elastic rope 704 returns to the natural straight state, and the second waterproof joint 7062 is located at position B. The elastic rope 704 plays a role in pulling the optical fiber cable 705. The cable slot cover 708 covers the cable slot 702.

[0032] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principles and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A cable organizer suitable for server testing, comprising a test stand (4), characterized in that: The top of the test rack (4) is provided with a cooling fan (1), the top of the test rack (4) is provided with a switch (2), the top of the test rack (4) is provided with a tower light (3), the top of the inner side of the test rack (4) is provided with a KVM detection device (5), the inner side of the test rack (4) is fixedly connected with a wiring panel (6), the inner side of the test rack (4) is provided with an optical fiber wiring device (7), the outer side of the test rack (4) is provided with a PDU socket (8), the inner side of the test rack (4) is provided with an artificial channel (9), and one side of the artificial channel (9) is provided with a A first connecting plate (12) and a second connecting plate (13) are provided, and a plurality of first fixers (10) and second fixers (601) are installed outside the first connecting plate (12) and the second connecting plate (13). The first fixers (10) and the second fixers (601) are used to store power cables (801) and network cables (603). The network cables (603) pass through the connection wiring panel (6). A third waterproof connector (602) is provided at the bottom of the second fixer (601), and the plurality of network cables (603) are bound together via the third waterproof connector (602).

2. A cable organizer suitable for server testing according to claim 1, characterized in that: The first fixture (10) and the second fixture (601) are distributed at equal intervals on the outside of the test frame (4).

3. A cable organizer suitable for server testing according to claim 1, characterized in that: One end of the power cord (801) is connected to the PDU socket (8).

4. A cable organizer suitable for server testing according to claim 1, characterized in that: The cooling fans (1), switches (2) and tower lights (3) are each provided in four numbers.

5. A cable organizer suitable for server testing according to claim 1, characterized in that: The KVM detection device (5) comprises a guide rail (501), a guide rope (502), a lifting ring (503), a sliding bearing (504), a connecting plate (505), a push rod (506), a limiting sleeve (507), a push rod seat (508), a KVM fixing frame (509), a KVM body (510) and a KVM line (511). The KVM detection device (5) is fixed above the artificial passage (9) via the connecting plate (505). The KVM fixing frame (509) is fixed to the upper side of the artificial passage (9). The guide rail (509) and the guide rail (501) are slidably connected via four sliding bearings (504); one end of the KVM line (511) is connected to the KVM body (510); one side of the connecting plate (505) is fixedly connected to a guide rope (502); a lifting ring (503) is sleeved on the outer side of the guide rope (502); the lifting ring (503) is connected to the KVM line (511); and the push rod (506), the limiting sleeve (507) and the push rod seat (508) are connected.

6. A cable organizer suitable for server testing according to claim 1, characterized in that: The optical fiber cable management device (7) is provided with an optical fiber line (705), a first fixing seat (7011), a second fixing seat (7012), a first cardboard (7031), an elastic rope (704), a first waterproof joint (7061), a second waterproof joint (7062), an optical module (707), a wire trough (702) and a wire trough cover (708) on the inner side thereof; the optical fiber line (705) passes through the wiring panel (6), the first fixing seat (7011) and the first cardboard (7031); the optical fiber line (705) is connected to the elastic rope (704) through the first waterproof joint (7061) and the second waterproof joint (7062); the second fixing seat (7012) is provided at one end of the wire trough (702); a wire trough cover (708) is provided on one side of the wire trough (702); and one end of the optical fiber line (705) is connected to the optical module (707).